À propos
I am a cognitive neuroscientist interested in auditory neurophysiology and how information is sequentially encoded in the human brain. After a master’s degree in cognitive neurosciences, I performed a PhD at Ecole Normale Supérieure de Paris where I investigated the role of cortical oscillations as instruments of sensory selection, in the context of speech processing. Subsequently I completed two postdoctoral fellowships, at Columbia and McGill Universities, studying the influence of the motor system in auditory perception and its close interdependency with temporal attention. Currently appointed as an academic researcher at Aix-Marseille University, my domain of expertise encompasses brain imaging, advanced signal processing and psychophysics.
Publications
- Sensory integration, temporal prediction, and rule discovery reflect interdependent inference processes — Proceedings of the National Academy of Sciences, 2026
- The role of high-amplitude bursts of high-gamma activity in naturalistic speech and music listening — Imaging Neuroscience, 2026
- Do Not Forget the Stimulus: A Missing Control in Naturalistic Studies of Neural Entrainment — eneuro, 2026
- Music Is Quasi‐Rhythmic Too: Comparing Bandwidth in Speech and Music Acoustic Modulation Spectra — Annals of the New York Academy of Sciences, 2026
- Neurophysiological mechanisms of optimized graphomotor performance in biscriptuals — Imaging Neuroscience, 2026
- Complexity in speech and music listening via neural manifold flows — Network Neuroscience, 2025
- Corollary discharge signals during production are domain general: An intracerebral EEG case study — Cortex, 2025
- Moving rhythmically can facilitate naturalistic speech perception in a noisy environment — Proceedings of the Royal Society B: Biological Sciences, 2025
- Spectrotemporal Modulation Sensitivity in Speech and Melody Processing Among Mandarin Speakers — Ear & Hearing, 2025
- Bridging verbal coordination and neural dynamics — eLife, 2025
- Different sustained and induced alpha oscillations emerge in the human auditory cortex during sound processing — Communications Biology, 2024
- Neural dynamics of predictive timing and motor engagement in music listening — Science Advances, 2024
- Speech and music recruit frequency-specific distributed and overlapping cortical networks — eLife, 2024
- The human auditory cortex concurrently tracks syllabic and phonemic timescales via acoustic spectral flux — Science Advances, 2024
- Auditory and motor priming of metric structure improves understanding of degraded speech — Cognition, 2024
- Auditory hemispheric asymmetry for actions and objects — Cerebral Cortex, 2024
